García de Ancos J, Correas I, Avila J
Centro de Biología Molecular, Universidad Autónoma de Madrid, Spain.
J Biol Chem. 1993 Apr 15;268(11):7976-82.
We have fractionated tau isoforms by elution at increasing pH values using iron-chelated affinity chromatography, which discriminates between isoforms phosphorylated to different extents. Microtubule-associated tau elutes from the column at a pH gradient narrower than that of total brain tau. Neither under-phosphorylated nor highly phosphorylated isoforms are found in the microtubule-associated tau protein preparation. This indicates that phosphorylation at certain sites is needed for tau binding to microtubules, whereas phosphorylation at some other sites may prevent the association. The self-association ability of the different tau isoforms has also been analyzed. Tau isoforms containing three tubulin binding motifs form covalently bound dimers more efficiently than tau isoforms containing four motifs. This dimer-forming ability is notably diminished in the presence of a reducing agent, as determined by SDS-polyacrylamide gel electrophoresis, thus suggesting the involvement of cysteine residues. Additionally, tau forms larger aggregates, as detected by gel permeation chromatography, which are solubilized by SDS and cannot, therefore, be observed by SDS-polyacrylamide gel electrophoresis. These tau aggregates are observed even in the presence of reducing agents. These results support the idea that other regions in the tau molecule, besides the Cys-containing tubulin binding region, also contribute to tau self-association. Tau dimerization and aggregation may be prior steps to the formation of paired helical filaments.
我们使用铁螯合亲和色谱法,通过在逐渐升高的pH值下洗脱来分离tau异构体,该方法可区分不同磷酸化程度的异构体。与微管相关的tau在比全脑tau更窄的pH梯度下从柱上洗脱。在与微管相关的tau蛋白制剂中未发现磷酸化不足或高度磷酸化的异构体。这表明tau与微管结合需要在某些位点进行磷酸化,而在其他一些位点的磷酸化可能会阻止这种结合。我们还分析了不同tau异构体的自我结合能力。含有三个微管蛋白结合基序的tau异构体比含有四个基序的tau异构体更有效地形成共价结合的二聚体。如通过SDS-聚丙烯酰胺凝胶电泳所确定的,在还原剂存在下,这种形成二聚体的能力显著降低,因此表明半胱氨酸残基参与其中。此外,通过凝胶渗透色谱法检测到tau形成更大的聚集体,这些聚集体可被SDS溶解,因此无法通过SDS-聚丙烯酰胺凝胶电泳观察到。即使在还原剂存在的情况下也能观察到这些tau聚集体。这些结果支持这样一种观点,即除了含半胱氨酸的微管蛋白结合区域外,tau分子中的其他区域也有助于tau的自我结合。tau二聚化和聚集可能是形成双螺旋丝的前期步骤。